Biblio

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C
Rashkeev SN, Ginosar DM, Petkovic LM, Farrell HH.  2009.  Catalytic activity of supported metal particles for sulfuric acid decomposition reaction. Catalysis Today. 139(4):291-298.
Millet P., Ranjbari A., de Guglielmo F., Grigoriev S.A, Auprêtre F..  2012.  Cell failure mechanisms in PEM water electrolyzers. International Journal of Hydrogen Energy. 37(22):17478-17487.
Gibbons WT, Venstrom LJ, De Smith RM, Davidson JH, Jackson GS.  2014.  Ceria-based electrospun fibers for renewable fuel production via two-step thermal redox cycles for carbon dioxide splitting. Physical Chemistry Chemical Physics. 16(27):14271.
Garrick TR, Wilkins CH, Pingitore AT, Mehlhoff J, Gulledge A, Benicewicz BC, Weidner JW.  2017.  Characterizing Voltage Losses in an SO2 Depolarized Electrolyzer Using Sulfonated Polybenzimidazole Membranes. Journal of The Electrochemical Society. 164(14):F1591-F1595.
Garrick TR, Wilkins CH, Pingitore AT, Mehlhoff J, Gulledge A, Benicewicz BC, Weidner JW.  2017.  Characterizing Voltage Losses in an SO2 Depolarized Electrolyzer Using Sulfonated Polybenzimidazole Membranes. Journal of The Electrochemical Society. 164(14):F1591-F1595.
Ellis DS, Piekner Y, Grave DA, Schnell P, Rothschild A.  2022.  Considerations for the Accurate Measurement of Incident Photon to Current Efficiency in Photoelectrochemical Cells. Frontiers in Energy Research. 9
Hwang S, Porter SH, Laursen AB, Yang H, Li M, Manichev V, Calvinho KUD, Amarasinghe V, Greenblatt M, Garfunkel E et al..  2019.  Creating stable interfaces between reactive materials: titanium nitride protects photoabsorber–catalyst interface in water-splitting photocathodes. Journal of Materials Chemistry A. 7(5):2400-2411.
Hwang S, Porter SH, Laursen AB, Yang H, Li M, Manichev V, Calvinho KUD, Amarasinghe V, Greenblatt M, Garfunkel E et al..  2019.  Creating stable interfaces between reactive materials: titanium nitride protects photoabsorber–catalyst interface in water-splitting photocathodes. Journal of Materials Chemistry A. 7(5):2400-2411.
Babic U, Suermann M, Büchi FN, Gubler L, Schmidt TJ.  2017.  Critical Review—Identifying Critical Gaps for Polymer Electrolyte Water Electrolysis Development. Journal of The Electrochemical Society. 164(4):F387-F399.
Gómez SYesid, Hotza D.  2016.  Current developments in reversible solid oxide fuel cells. Renewable and Sustainable Energy Reviews. 61:155-174.
D
Hauch A, Brodersen K, Chen M, Graves C, Jensen SHøjgaard, Jørgensen PStanley, Hendriksen PVang, Mogensen MBjerg, Ovtar S, Sun X.  2017.  A Decade of Solid Oxide Electrolysis Improvements at DTU Energy. ECS Transactions. 75(42):3-14.
Tian H, Li W, Ma L, Yang T, Guan B, Shi W, Kalapos TL, Liu X.  2020.  Deconvolution of Water-Splitting on the Triple-Conducting Ruddlesden–Popper-Phase Anode for Protonic Ceramic Electrolysis Cells. ACS Applied Materials & Interfaces. 12:49574-49585.
Hathaway BJ, Chandran RBala, Gladen AC, Chase TR, Davidson JH.  0.  Demonstration of a solar reactor for carbon dioxide splitting via the isothermal ceria redox cycle and practical implications. Energy & Fuels. 30(8):6654-6661.
He Y, Vanka S, Gao T, He D, Espano J, Zhao Y, Dong Q, Lang C, Wang Y, Hamann TW et al..  2019.  Dependence of interface energetics and kinetics on catalyst loading in a photoelectrochemical system. Nano Research.
Ermanoski I, Grobbel J, Singh A, Lapp J, Brendelberger S, Roeb M, Sattler C, Whaley J, McDaniel A, Siegel NP.  2016.  Design and construction of a cascading pressure reactor prototype for solar-thermochemical hydrogen production. 1734:120001.
Singh A, Lapp J, Grobbel J, Brendelberger S, Reinhold JP, Olivera L, Ermanoski I, Siegel NP, McDaniel A, Roeb M et al..  0.  Design of a pilot scale directly irradiated, high temperature, and low pressure moving particle cavity chamber for metal oxide reduction. Solar Energy. 157:365-376.
Ezbiri M, Allen KM, Gàlvez ME, Michalsky R, Steinfeld A.  0.  Design principles of perovskites for thermochemical oxygen separation. ChemSusChem. 8(11):1966-1971.
Steimke JL, Steeper TJ, Colón-Mercado HR, Gorensek MB.  0.  Development and testing of a PEM SO2-depolarized electrolyzer and an operating method that prevents sulfur accumulation. International Journal of Hydrogen Energy. 40(39):13281-13294.
Gorensek MB, Corgnale C, Summers WA.  0.  Development of the hybrid sulfur cycle for use with concentrated solar heat. I. Conceptual design. International Journal of Hydrogen Energy. 42(33):20939-20954.
Lettenmeier P., Wang R., Abouatallah R., Helmly S., Morawietz T., Hiesgen R., Kolb S., Burggraf F., Kallo J., Gago A.S et al..  0.  Durable Membrane Electrode Assemblies for Proton Exchange Membrane Electrolyzer Systems Operating at High Current Densities. Electrochimica Acta. 210:502-511.